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Your position High-throughput drug screening has traditionally relied on 2D cell culture systems, which often fail to capture the structural and metabolic complexity of in vivo patient tumors
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of Basel at 6 different locations. Be part of our future! High-throughput drug screening has traditionally relied on 2D cell culture systems, which often fail to capture the structural and metabolic
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construction, resilient urban water systems, renewable energy, etc.) be scaled up and mainstreamed to reach their full transformative potential? To tackle this question, we are establishing the Climate Solutions
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, clustering, latent-state models, and unsupervised learning to identify high-order structure in neural and molecular data. • Conduct statistical modeling of temporal trajectories and population dynamics across
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assistant professorship or a tenured associate professorship in Structural Biology, Biophysics or Biological Imaging. We encourage applications from candidates who explore fundamental questions in biology
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and develop strong links with the established pediatricians and other non-hospital pediatric structures. The ability to lead high-level research in the field of pediatrics is required, as well as proven
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remote sensing missions. The team’s work bridges earth observation with applied forest monitoring, including tree species identification, forest structural changes, and forest resilience assessments, with
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approaches to satellite data. We expect this project to open new perspectives for understanding tipping behaviour in the climate system, leveraging the crucial interplay between topological network structures
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materials, surgical technologies. Ability to collaborate and communicate across engineering, materials science - chemistry, manufacturing, and clinical teams. Structured, detail-oriented, and rigorous
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related field. You are familiar with the European planning systems and have experience in planning and policy analysis, engaging with stakeholders and methods such as document analysis and semi-structured